Age, Biography and Wiki
Frederick Vine was born on 17 June, 1939 in Chiswick, London, United Kingdom. Discover Frederick Vine's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is He in this year and how He spends money? Also learn how He earned most of networth at the age of 84 years old?
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Age |
85 years old |
Zodiac Sign |
Gemini |
Born |
17 June 1939 |
Birthday |
17 June |
Birthplace |
Chiswick, London, United Kingdom |
Nationality |
United Kingdom |
We recommend you to check the complete list of Famous People born on 17 June.
He is a member of famous with the age 85 years old group.
Frederick Vine Height, Weight & Measurements
At 85 years old, Frederick Vine height not available right now. We will update Frederick Vine's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.
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Who Is Frederick Vine's Wife?
His wife is Susan 'Sue' Vine (née McCall)
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Susan 'Sue' Vine (née McCall) |
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Frederick Vine Net Worth
His net worth has been growing significantly in 2022-2023. So, how much is Frederick Vine worth at the age of 85 years old? Frederick Vine’s income source is mostly from being a successful . He is from United Kingdom. We have estimated
Frederick Vine's net worth
, money, salary, income, and assets.
Net Worth in 2023 |
$1 Million - $5 Million |
Salary in 2023 |
Under Review |
Net Worth in 2022 |
Pending |
Salary in 2022 |
Under Review |
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Timeline
Vine worked with E. M. Moores on the Ophiolite in the Troodos mountains of southern Cyprus. He worked with R. A. Livermore and A. G. Smith on the history of the Earth's magnetic field. He worked on the electrical conductivity of rocks from the lower continental crust with R. G. Ross and P. W. J. Glover, which culminated in 1992 with measurements of the electrical conductivity of graphite-rich amphibolites and granulites at lower crustal temperatures and pressures with a full water saturation and pore fluid pressure and graphite-free
In 1967, Vine became assistant professor of geology and geophysics at Princeton University. In 1970 he moved to the School of Environmental Sciences at the University of East Anglia, becoming professor there in 1974. He served as dean from 1977 to 1980, and again from 1993 to 1998. After 1998, he was a professorial fellow of the University of East Anglia. and then in 2008 he became an emeritus professor there.
Vine was born in Chiswick, London, and educated at Latymer Upper School and St John's College, Cambridge where he studied Natural Sciences (BA, 1962) and marine geophysics (PhD, 1965). He married Susan 'Sue' Vine (née McCall), who worked as a research assistant for Drummond Matthews in the Department of Geodesy and Geophysics, University of Cambridge, contributing to the development of the sea-floor spreading hypothesis associated with Matthews and her husband.
Vine's PhD thesis was on 'Magnetism in the Seafloor' and supervised by Drummond Matthews. Having met Harry Hess he was aware of sea floor spreading, where the ocean bed acts as a 'conveyor belt' moving away from the central ridge. Vine's work, with that of Drummond Matthews and Lawrence Morley of the Geological Survey of Canada, helped put the variations in the magnetic properties of the ocean crust into context in what is now known as the Vine–Matthews–Morley hypothesis. Specifically they supported Dietz's (Nature 1961) idea that sea floor spreading was occurring at mid-ocean ridges. Vine and Matthews showed that basalt created at a mid-ocean ridge records earth's current magnetic field polarity (and strength), thus turning Hess's theoretical 'conveyor belt' into a 'tape recorder'. Furthermore, they showed that magnetic reversals 'frozen' into these rocks, as suggested by Allan Cox (Nature 1963), can be seen as parallel strips as you travel perpendicularly away from the ridge crest.
Frederick John Vine FRS (born 17 June 1939) is an English marine geologist and geophysicist. He made key contributions to the theory of plate tectonics, helping to show that the seafloor spreads from mid-ocean ridges with a symmetrical pattern of magnetic reversals in the basalt rocks on either side.